[request_ebook] Statics and Mechanics of Materials, SI Edition
Author: R.C. Hibbeler
Date: 31/08/2004
ISBN: 0131290118
Publisher: Pearson – Prentice Hall
Category: Technical
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Description
Chap. 1 General Principles
Fundamental concepts; Units of measurement
Chap. 2 Force Vectors
Vector operations
Vector addition of forces
Addition of a system of coplanar forces
Cartesian vectors
Addition and subtraction of 3D forces
Position vectors
Dot product
Chap. 3 Force System Resultants
Moment of a force: scalar formulation
Cross product
Moment of a force: vector formulation
Principle of moments
Moment about an axis
Moment of a couple
Equivalent system
Resultant of a force-couple system
Further reduction to a single force
Chap. 4 Equilibrium of a Rigid Body
Conditions for rigid-body equilibrium
Free body diagrams
Equations of equilibrium
Two and three force members
Chap. 5 Structural Analysis
Simple trusses
The method of joints
Zero-force members
The method of sections
Frames and Machines
Chap. 6 Geometric Properties and
Distributed Loadings
Centre of gravity for a system of particles
Center of gravity and centroid for a body
Composite bodies
Resultant of a distributed Force system
Moments of inertia for areas
Parallel-axis theorem
Moments of Inertia for composite areas
Review I Chapters 1-6
Chap. 7 Internal Loadings
Internal loadings developed in structural
members
Shear and moment equations and diagram
Relation between distributed load, shear and
moment
Chap. 8 Stress and Strain
Stress
Average normal stress in an axially loaded bar
Average shear stress
Allowable stress
Design of simple connections
Deformation
Strain
Chap. 9 Mechanical Properties of Material
The tension and compression Test
The stress-strain diagram
Stress-strain behaviour of ductile and brittle
materials
Hooke’s law
Poisson’s ratio
The shear stress-strain diagram
Chap. 10 Axial Load
Saint-Venant’s principle
Elastic deformation of an axially loaded member
Principle of superposition
Thermal stress
Chap. 11 Torsion
Torsional deformation of circular shaft
The torsion formula
Angle of twist
Chap. 12 Bending
Bending deformation of a straight member
The flexure formula
Unsymmetric bending
Composite Beams
Review II Chapters 7-12
Chap. 13 Transverse Shear
Shear in straight members
The shear formula
Shear stress in beams
Rectangular cross section
Wide-Flange beam
Shear flow in built-up members
Chap. 14 Combined loadings
Thin-walled pressure vessels
Cylindrical vessels
Spherical vessels
State of stresses caused by combined loadings
Chap. 15 Stress and strain transformation
Plane-stress
Plane-stress transformation
Principal stresses
Maximum in-plane shear stress Mohr’s circle for
plane stress state
Plane strain
Plane strain transformation
Strain rosettes
Generalized Hooke’s law
Chap. 16 Design of beams
Stress variations over a prismatic beam
Beam design
Precedure of analysis
Chap. 17 Buckling of columns
Column buckling
Critical load
Column with pin supports
Columns with different boundary conditions
Effective length
Effective-slenderness ratio
Review III Chapters 13-17
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